Long ago, the Earth was very cold. 
A long time ago, the Earth was very cold. 

A long time ago, the Earth was very cold. This was the Last Glacial Maximum. It happened between 26,000 and 20,000 years ago. 
Because the ice held so much water, the sea level dropped. The sea was 125 meters lower than it is today. 
The world was also very dry. Most deserts grew much larger. Many forests became grasslands. The air was very dusty. There was 20 to 25 times more dust than today.
The Last Glacial Maximum was a very cold time on Earth. It was the most recent time when giant ice sheets were at their largest. This happened between 26,000 and 20,000 years ago. 

This cold period worked by changing how water and air moved. To make an ice sheet, you need long periods of cold and lots of snow. As the ice grew, it locked up huge amounts of water from the oceans. This caused the sea levels to fall and exposed flat land called continental shelves.
Scientists use different clues to study this time. They look at things like ice cores and the types of fossils found in the ground. Archaeologist Jennifer French says this period began around 27,500 years ago. She notes the ice was at its biggest by 26,000 years ago. 
Many places changed during the Last Glacial Maximum. Most deserts grew much larger during this time. In Australia, shifting sand dunes covered half of the entire continent.
We can see how this connects to our world by looking at maps. When the sea level was low, many islands became part of the mainland. In Asia, islands like Borneo and Bali joined the continent to form Sundaland.
The Last Glacial Maximum (LGM) was the most recent period of peak ice coverage during the Last Glacial Period. This era occurred between 26,000 and 20,000 years ago. During this time, massive ice sheets stretched across much of Northern North America, Northern Europe, and Asia. 
To form these massive ice sheets, the Earth required two specific conditions: prolonged cold and heavy precipitation in the form of snow. As snow accumulated over long periods, it compressed into ice, growing into vast sheets. This process locked up enormous quantities of water that would otherwise be in the oceans. Consequently, the sea level dropped significantly, reaching about 125 meters (410 feet) lower than it is today. 
Different regions experienced the LGM in distinct ways. In the northern hemisphere, massive continental ice sheets dominated. However, East Asia remained largely unglaciated despite having cold temperatures. This happened because the ice sheets in Europe created extensive anticyclones, or large-scale weather systems, above them. These systems generated very dry air masses that reached Siberia and Manchuria. Because the air was so dry, there was not enough precipitation to form glaciers in most of Asia. Other factors, such as the relative warmth of the Pacific Ocean and large mountain ranges, also prevented continental glaciation there.
Researchers use various methods to determine when the LGM began and ended. They study terrestrial cosmogenic nuclides and radiocarbon dating to track ice sheet margins. Because different scientists use different data sets and criteria, there is no single agreed-upon timeline. For example, archaeologist Jennifer French dates the onset to 27,500 years ago. She suggests ice sheets reached their maximum by 26,000 years ago, with deglaciation starting between 20,000 and 19,000 years ago. In Britain, this period is called the Dimlington Stadial and is dated between 31,000 and 16,000 years ago.
The scale of change during the LGM was immense. The average global temperature about 21,000 years ago was approximately 6 °C colder than present-day levels. According to the USGS, permanent summer ice covered about 8% of the Earth's surface and 25% of the land area. 
Vegetation patterns shifted dramatically across the planet. Most deserts expanded, and many subtropical regions lost their forests to open woodlands. In Southern Australia, shifting sand dunes covered half of the continent.
One of the most striking effects of the LGM was the connection of landmasses. Because the sea level was so low, many islands became part of the mainland. In Southeast Asia, the Indonesian islands like Borneo and Bali joined the continent to form a landmass called Sundaland.
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